Lever-type connector
A lever-type connector includes a mating housing, a housing that is fitted into and removed from the mating housing, and a lever that is rotatably supported by the housing and fits the housings to each other. The lever includes a temporary locking arm portion that has a temporary locking portion, the housing includes a temporarily locked portion that is temporarily locked to and unlocked from the temporary locking portion of the temporary locking arm portion, the mating housing includes a release rib portion that releases a temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing, and a cam groove of the lever includes a boss receiving portion that receives the cam boss when the mating housing and the housing are temporarily set.
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The present application is based on, and claims priority from Japanese Patent Application No. 2019-129747, filed on Jul. 12, 2019, the entire contents of which are incorporated herein by reference.
TECHNICAL FIELDThe present application relates to a lever-type connector in which connectors can be fitted to each other with low insertion force due to rotation of a lever.
BACKGROUNDJP 2017-168391 A discloses this type of lever-type connector. This lever-type connector includes a housing having a fitting cylindrical portion that is fitted into and removed from a hood portion of a mating housing. In addition, the lever-type connector includes a lever. The lever is rotatably supported, via bearings, by support shafts on both sides of the fitting cylindrical portion of the housing, and has a cam groove that engages with a cam follower arranged in the hood portion of the mating housing. By rotating the operating portion, the cam groove is engaged with the cam follower and thus the housings are fitted to each other. A shaft center of the cam follower in the mating housing, the cam follower being engaged with the cam groove of the lever, is shifted in position toward the operating portion, which is upward of a shaft center of the bearing of the lever in a vertical direction (direction orthogonal to fitting direction of housing and mating housing).
In the lever-type connector, the cam follower of the mating housing abuts against a gentle slope of the cam groove of the lever. Therefore, when the mating housing is pushed further into the housing from a temporary set state of both housings, the lever may rotate, and a female terminal of the housing and a male terminal of the mating housing may be fitted into a position where these terminals can be electrically conducted.
SUMMARYThe present application has been achieved in order to solve the above problems, and an object of the application is to provide a lever-type connector that can prevent rotation of a lever when both housings are temporarily set, and that can prevent electrical conduction between terminals of the housings before the lever is operated.
A lever-type connector according to a first aspect of the present application includes a mating housing having a cam boss, a housing that is fitted into and removed from the mating housing, and a lever that is rotatably supported by the housing via a support shaft, has a cam groove engaging with the cam boss, and is rotated from a temporary locking position to cause the cam groove to engage with the cam boss, thus moving the mating housing toward the housing and fitting the mating housing and the housing to each other. The lever includes a temporary locking arm portion that has a temporary locking portion and is elastically deformable, and the housing includes a temporarily locked portion that is temporarily locked to and unlocked from the temporary locking portion of the temporary locking arm portion. Further, the mating housing includes a release rib portion that releases a temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing, and the cam groove of the lever includes a boss receiving portion that receives the cam boss when the temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing is released in a state where the mating housing and the housing are temporarily set.
A lever-type connector according to a second aspect of the present application relates to the lever-type connector according to the first aspect. A projecting temporary set beak portion is formed on a lower surface of the release rib portion, and the housing includes a temporary set arm portion that prevents the mating housing from being removed from the housing, the mating housing and the housing being in a temporary set state when a temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released. In addition, a distal end of the temporary set arm portion includes a projection that slides along the lower surface of the release rib portion, and the temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released at a position where the projection is across the temporary set beak portion from the lower surface of the release rib portion.
With the configuration described above, it is possible to provide a lever-type connector that can prevent the rotation of the lever when the mating housing and the housing are temporarily set, and that can prevent electrical conduction between terminals of the housings before the lever is operated.
Hereinafter, a lever-type connector according to the present embodiment will be described in detail with reference to the drawings. Note that the dimensional ratios in the drawings are exaggerated for convenience of explanation, and may differ from the actual ratios.
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When the operating portion 31 of the lever 30 is rotated, the cam groove 35 of the arm portion 32 of the lever 30 engages with the cam boss 12 of the male housing 11 and thus the male housing 11 is made to move toward the female housing 20, so that the male housing 11 and the female housing 20 are fitted to each other. When the lever 30 is completely rotated, the locking projection 33 on the lower side of the operating portion 31 of the lever 30 is locked to the receiving portion 24b of the locking arm portion 24 in the female housing 20, which brings about the rotation restricting state where the rotation of the lever 30 is restricted.
While the present embodiment has been described above, the present embodiment is not limited thereto, and various modifications can be made within the scope of the gist of the present embodiment.
That is, according to the embodiment described above, the cutaway portion of the female housing functioning as a temporarily locked portion and the temporary locking projection of the temporary locking arm portion of the lever functioning as a temporary locking portion are temporarily locked to each other, however, the temporarily locked portion may be a recess, a protrusion, or the like besides the cutaway portion.
Next, a comparative example will be described. A lever-type connector 1 according to the comparative example includes a housing 2 having a fitting cylindrical portion 2a that is fitted into and removed from a hood portion 7a of a mating housing 7. In addition, the lever-type connector 1 includes a lever 4. The lever 4 is rotatably supported, via bearings 5, by support shafts 3 on both sides of the fitting cylindrical portion 2a of the housing 2, and has a cam groove 6 that engages with a cam follower 8 arranged in the hood portion 7a of the mating housing 7. By rotating an operating portion 4a, the cam groove 6 is engaged with the cam follower 8 and thus the housings 2 and 7 are fitted to each other.
The shaft center of the cam follower 8 in the mating housing 7, the cam follower 8 being engaged with the cam groove 6 of the lever 4, is shifted in position toward the operating portion 4a, which is upward of the shaft center of the bearing 5 of the lever 4 in a vertical direction (direction orthogonal to fitting direction of housing 2 and mating housing 7). For this reason, when the housings 2 and 7 are properly fitted, a terminal end portion 6a of the cam groove 6 that receives the cam follower 8 is located closer to the operating portion 4a than the bearing 5. Compared to a case where the terminal end portion 6a and the bearing 5 are located at the same height, the amount that the cam groove 6 extends to the side of the bearing 5 opposite to the side of the bearing 5 closer to the operating portion 4a (lower side) can be reduced, and thus it is possible to prevent the lever 4 from becoming large in the vertical direction.
However, in the lever-type connector 1 according to the comparative example, the cam follower 8 of the mating housing 7 abuts against a gentle slope of the cam groove 6 of the lever 4. For this reason, when the mating housing 7 is pushed further into the housing 2 from a temporarily set state of the housings 2 and 7, the lever 4 may rotate, and a female terminal 2A of the housing 2 and a male terminal 9 of the mating housing 7 may be fitted into a position where these terminals 2A and 9 can be electrically conducted.
While certain embodiments have been described, these embodiments have been presented by way of example only, and are not intended to limit the scope of the inventions. Indeed, the novel embodiments described herein may be embodied in a variety of other forms; furthermore, various omissions, substitutions and changes in the form of the embodiments described herein may be made without departing from the spirit of the inventions. The accompanying claims and their equivalents are intended to cover such forms or modifications as would fall within the scope and spirit of the inventions.
Claims
1. A lever-type connector comprising:
- a mating housing having a cam boss;
- a housing that is fitted into and removed from the mating housing; and
- a lever that is rotatably supported by the housing via a support shaft, has a cam groove engaging with the cam boss, and is rotated from a temporary locking position to cause the cam groove to engage with the cam boss, thus moving the mating housing toward the housing and fitting the mating housing and the housing to each other, wherein
- the lever includes a temporary locking arm portion that has a temporary locking portion and is elastically deformable,
- the housing includes a temporarily locked portion that is temporarily locked to and unlocked from the temporary locking portion of the temporary locking arm portion,
- the mating housing includes a release rib portion that releases a temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing, and
- the cam groove of the lever includes a boss receiving portion that receives the cam boss when the temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing is released,
- wherein, of the lever, the temporary locking arm portion is arranged more radially inwards towards the support shaft than is the boss receiving portion, and
- wherein the housing includes a temporary set arm portion that prevents the mating housing from being removed from the housing, the mating housing and the housing being in a temporary set state when a temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released.
2. The lever-type connector according to claim 1, wherein
- a projecting temporary set beak portion is formed on a lower surface of the release rib portion,
- a distal end of the temporary set arm portion includes a projection that slides along the lower surface of the release rib portion, and
- the temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released at a position where the projection is across the temporary set beak portion from the lower surface of the release rib portion.
3. The lever-type connector according to claim 1, wherein
- a projecting temporary set beak portion is formed on a lower surface of the release rib portion.
4. A lever-type connector comprising:
- a mating housing having a cam boss;
- a housing that is fitted into and removed from the mating housing; and
- a lever that is rotatably supported by the housing via a support shaft, has a cam groove engaging with the cam boss, and is rotated from a temporary locking position to cause the cam groove to engage with the cam boss, thus moving the mating housing toward the housing and fitting the mating housing and the housing to each other, wherein
- the lever includes a temporary locking arm portion that has a temporary locking portion and is elastically deformable,
- the housing includes a temporarily locked portion that is temporarily locked to and unlocked from the temporary locking portion of the temporary locking arm portion,
- the mating housing includes a release rib portion that releases a temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing,
- the cam groove of the lever includes a boss receiving portion that receives the cam boss when the temporary locking state of the temporary locking portion of the temporary locking arm portion and the temporarily locked portion of the housing is released,
- a projecting temporary set beak portion is formed on a lower surface of the release rib portion,
- the housing includes a temporary set arm portion that prevents the mating housing from being removed from the housing, the mating housing and the housing being in a temporary set state when a temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released,
- a distal end of the temporary set arm portion includes a projection that slides along the lower surface of the release rib portion, and
- the temporary locking state of the temporary locking portion of the temporary locking arm portion of the lever and the temporarily locked portion of the housing is released at a position where the projection is across the temporary set beak portion from the lower surface of the release rib portion.
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Type: Grant
Filed: Jul 10, 2020
Date of Patent: Feb 15, 2022
Patent Publication Number: 20210013675
Assignee: YAZAKI CORPORATION (Tokyo)
Inventor: Yosuke Akagi (Shizuoka)
Primary Examiner: Ross N Gushi
Application Number: 16/925,721
International Classification: H01R 13/62 (20060101); H01R 13/629 (20060101);